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Batch and Continuous Lactic Acid Fermentation Based on A Multi-Substrate Approach

机译:基于多基板方法的批次和连续乳酸发酵

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The utilisation of waste materials and industrial residues became a priority within the bioeconomy concept and the production of biobased chemicals. The aim of this study was to evaluate the feasibility to continuously produce L-lactic acid from different renewable substrates, in a multi-substrate strategy mode. Based on batch experiments observations, Bacillus coagulans A534 strain was able to continuously metabolise acid whey, sugar beet molasses, sugar bread, alfalfa press green juice and tapioca starch. Additionally, reference experiments showed its behaviour in standard medium. Continuous fermentations indicated that the highest productivity was achieved when molasses was employed with a value of 10.34 g·L ?1 ·h ?1 , while the lactic acid to sugar conversion yield was 0.86 g·g ?1 . This study demonstrated that LA can be efficiently produced in continuous mode regardless the substrate, which is a huge advantage in comparison to other platform chemicals.
机译:废料和工业残留物的利用成为生物经济概念和生物化学品生产的优先事项。本研究的目的是评估在多基底策略模式中连续地从不同可再生基材中连续产生L-乳酸的可行性。基于批量实验观察,芽孢杆菌凝酸体A534菌株能够连续代谢酸性乳清,甜菜糖蜜,糖面包,苜蓿压榨果汁和木薯淀粉。另外,参考实验表明其在标准介质中的行为。连续发酵表明,当使用值为10.34g·l≤1·1·1·1·1·1的糖蜜时,达到最高生产率,而乳酸对糖转化率为0.86g·g≤1。本研究证明,无论基材如何,都可以在连续模式下有效地生产,与其他平台化学品相比,这是一个巨大的优势。

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